Micheva K D, Beaulieu C
Départment de Pathologie, Université de Montréal, PQ, Canada.
Proc Natl Acad Sci U S A. 1995 Dec 5;92(25):11834-8. doi: 10.1073/pnas.92.25.11834.
The objective of this study was to examine the influence of sensory experience on the synaptic circuitry of the cortex. For this purpose, the quantitative distribution of the overall and of the gamma-aminobutyric acid (GABA) population of synaptic contacts was investigated in each layer of the somatosensory barrel field cortex of rats which were sensory deprived from birth by continuously removing rows of whiskers. Whereas there were no statistically significant changes in the quantitative distribution of the overall synaptic population, the number and proportion of GABA-immunopositive synaptic contacts were profoundly altered in layer IV of the somatosensory cortex of sensory-deprived animals. These changes were attributable to a specific loss of as many as two-thirds of the GABA contacts targeting dendritic spines. Thus, synaptic contacts made by GABA terminals in cortical layer IV and, in particular, those targeting dendritic spines represent a structural substrate of experience-dependent plasticity. Furthermore, since in this model of cortical plasticity the neuronal receptive-field properties are known to be affected, we propose that the inhibitory control of dendritic spines is essential for the elaboration of these functional properties.
本研究的目的是检验感觉经验对皮质突触回路的影响。为此,在通过持续剪掉几排须毛而从出生起就被剥夺感觉的大鼠的体感桶状皮层的各层中,研究了突触接触的总体和γ-氨基丁酸(GABA)群体的定量分布。虽然总体突触群体的定量分布没有统计学上的显著变化,但在感觉剥夺动物的体感皮层IV层中,GABA免疫阳性突触接触的数量和比例发生了深刻改变。这些变化归因于多达三分之二靶向树突棘的GABA接触的特异性丧失。因此,皮质IV层中由GABA终末形成的突触接触,尤其是那些靶向树突棘的突触接触,代表了经验依赖性可塑性的结构基础。此外,由于在这种皮质可塑性模型中已知神经元感受野特性会受到影响,我们提出对树突棘的抑制性控制对于这些功能特性的形成至关重要。